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17. Matsuzaki, Y. and I. Yasuda, The Poisoning Effect of Sulfur-Containing Impurity Gas on a SOFC Anode: Part I. Dependence on Temperature, Time, and Impurity Concentration. Solid State Ionics, 2000. 132: p. 261 - 269. 18. Virkar, A.V., et al., Solid State Ionics, 2000. 131: p. 189 - 198. 19. Juhl, M., et al., Journal of Power Sources, 1996. 61: p. 173. 20. Ghosh, D., et al. in Solid Oxide Fuel Cells VII. 2001: The Electrochemical Society. 21. Simner, S.P. and J.W. Stevenson. Cathode - Chromia Interactions. in SECA 2004 Annual Meeting and Core Program Review. 2004. Boston: US DOE NETL. 22. Taniguchi, S., et al., Journal of Power Sources, 1995. 55: p. 73 - 79. 23. Singhal, S.C., “Recent Progress in Tubular Solid Oxide Fuel Cell Technology,” Proceedings of the Fifth International Symposium on Solid Oxide Fuel Cells (SOFC – V), The Electrochemical Society, Inc., Pennington, NJ, 1997. 24.Köck, W., et al. in Solid Oxide Fuel Cells IV. 1995: The Electrochemical Society Proceedings, 841. 25.Blum, L., et al. in Solid Oxide Fuel Cells IV. 1995: The Electrochemical Society Proceedings, 163. 26. Report to DOE FETC, “Assessment of Planar Solid Oxide Fuel Cell Technology”, Reference 39463-02, Arthur D. Little, Inc., October 1999. 27. Lai, G.Y., “High Temperature Corrosion of Engineering Alloys,” ASM 1990. 28. Yang, G., et al. Advanced Metallic Interconnect Development. in SECA 2004 Annual Meeting and Core Program Review. 2004. Boston: US DOE NETL. 29. Stevenson, J.W. SOFC Seals: Material Status. in SECA Seal Meeting. 2003. Albequerque, NM, USA: US DOE NETL. 30. Thijssen, J. and S. Sriramulu, Structural Limitations in the Scale-Up of Anode-Supported SOFCs. 2002, Arthur D. Little for US DOE: Cambridge, MA, USA. 31. George, R. and A. Casanova. Developments in Siemens Westinghouse SOFC Program. in 2003 Fuel Cell Seminar. 2003. Miami Beach, FL, USA: Department of Energy. 32. Besette, N. Status of the Acumentrics SOFC Program. in SECA 2004 Annual Meeting and Core Program Review. 2004. Boston: US DOE NETL. 33. Nakanishi, A., et al. Development of MOLB Type SOFC. in Eighth International Symposium on Solid Oxide Fuel Cells (SOFC VIII). 2003. Paris, France: The Electrochemical Society, Inc. 34. Agnew, G.D., et al. Scale-Up of a Multi-Functional Solid Oxide Fuel Cell to Multi-Tens of Kilowatt Level (MF-SOFC). in Eighth International Symposium on Solid Oxide Fuel Cells (SOFC VIII). 2003. Paris, France: The Electrochemical Society, Inc. 35. H. Mori, N. Hisatome, K. Ikeda, K. Tomida, in Solid Oxide Fuel Cells VI (SOFC - VI) (M. D. S. C. Singhal, ed.), The Electrochemical Society, Honolulu, Hawaii, 1999, p. 52 36. J. Iritani, N. Komiyama, K. Nagata, K. Ikeda, K. Tomida, in Solid Oxide Fuel Cells VII (SOFC - VII) (S. C. S. H. Yokokawa, ed.), The Electrochemical Society, Tsukuba, Japan, 2001, p. 63 . 37. Isenberg, A.O., Proceedings of the Symposium on Electrode Materials on Processes for Energy Conversion and Storage, edited by J.D.E. McIntyre, S. Srinivasan, and F.G. Will, The Electrochemical Society, Inc., Pennington, NJ, p. 682, 1977. 38.Fee, D.C., S.A. Zwick, J.P. Ackerman, in Proceedings of the Conference on High Temperature Solid Oxide Electrolytes, held at Brookhaven National Laboratory, BNL 51728, compiled by F.J. Salzano, October, 1983. 7-46PDF Image | Fuel Cell Handbook (Seventh Edition)
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